Multiplex Labeling

Multiplex labeling is a method for simultaneously marking multiple molecular or cellular targets in a single biological sample, allowing their distribution and relationships to be compared directly. In neuroscience, researchers apply distinct fluorescent tags, antibodies, or genetic reporters to identify different cell types, proteins, or anatomical regions; separate spectral signals or detection channels then distinguish the labels during imaging. This approach increases the information obtained from each tissue section or specimen while preserving spatial context. Multiplex labeling supports studies of neural circuitry, cell organization, disease-associated changes, and treatment responses, helping researchers analyze complex interactions that single-target labeling may miss.

Multiplex Labeling - Related Videos

Research

JoVE EoE - Immunodiagnostics

Multiplexed Quantitative Bacterial Detection using Dye-Labeled Magnetic Microspheres

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2025

Source:Rhea Kang1, Gabby Mora1, Sherry Dunbar11Luminex, A DiaSorin Company, Austin.This video demonstrates multiplexed quantitative bacterial detection employing carboxylated magnetic polystyrene microspheres dyed into distinct sets. The procedure encompasses the formation of bead-bacteria complexes, magnetic separation, and flow-based analysis, enabling precise and simultaneous quantification of multiple bacteria in the same reaction well.

Enhanced Sample Multiplexing of Tissues Using Combined Precursor Isotopic Labeling and Isobaric Tagging (cPILOT)

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Cited by 10 •

2017

Combined precursor isotopic labeling and isobaric tagging (cPILOT) is a quantitative proteomics strategy that enhances sample multiplexing capabilities of isobaric tags. This protocol describes the application of cPILOT to tissues from an Alzheimer's disease mouse model and wild-type controls.

Simultaneous Label-Free Autofluorescence Multi-Harmonic Microscopy

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Cited by 3 •

2025

This protocol presents a step-by-step guide for the Simultaneous Label-free Autofluorescence Multi-harmonic (SLAM) microscopic technique, including details on how to generate the laser light source, prepare a tissue sample, conduct imaging, and analyze the data. SLAM advances nonlinear microscopy by measuring four complementary label-free contrasts to investigate the tissue microenvironment.

Research

JoVE Journal - Chemistry
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Automated Sample Multiplexing by using Combined Precursor Isotopic Labeling and Isobaric Tagging (cPILOT)

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Cited by 2 •

2020

Combined precursor isotopic labeling and isobaric tagging (cPILOT) is an enhanced sample multiplexing strategy that is capable of increasing the number of samples that can be analyzed simultaneously with available isobaric tags. Incorporation of a robotic platform has greatly increased experimental throughput, reproducibility, and quantitative accuracy.

Highly Multiplexed, Super-resolution Imaging of T Cells Using madSTORM

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Cited by 5 •

2017

We demonstrate a method to image multiple molecules within heterogeneous nano-structures at single molecule accuracy using sequential binding and elution of fluorescently labeled antibodies.

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